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    • 11. 发明授权
    • Semiconductor device
    • 半导体器件
    • US08653612B2
    • 2014-02-18
    • US12438879
    • 2007-08-22
    • Kazuo OkadaKatsuhiko KitagawaHiroshi Yamada
    • Kazuo OkadaKatsuhiko KitagawaHiroshi Yamada
    • H01L29/84
    • H01L27/14625H01L23/3135H01L27/14618H01L31/0203H01L31/02325H01L2924/0002H01L2924/3025H01L2924/00
    • An object of the invention is to provide a smaller semiconductor device of which the manufacturing process is simplified and the manufacturing cost is reduced. Furthermore, an object of the invention is to provide a semiconductor device having a cavity. A device element 3 is formed on a front surface of a semiconductor substrate 4, and a sealing body 1 is attached to the semiconductor substrate 4 with an adhesive layer 6 being interposed therebetween. A main surface (a back surface) of the sealing body 1 which faces the semiconductor substrate 4 is curved inward, and there is a given space (a cavity 2) between the sealing body 1 and the semiconductor substrate 4. Since the back surface of the sealing body 1 is curved, the sealing body 1 is used as a planoconcave lens (a reverse direction) as well as a sealing member for the device element 3.
    • 本发明的目的是提供一种较小的半导体器件,其制造过程被简化并且制造成本降低。 此外,本发明的目的是提供一种具有空腔的半导体器件。 器件元件3形成在半导体衬底4的前表面上,并且密封体1被粘附在半导体衬底4上,其间夹有粘合剂层6。 密封体1的面向半导体基板4的主表面(背面)向内弯曲,并且在密封体1和半导体基板4之间具有给定的空间(空腔2)。由于背面 密封体1弯曲,密封体1用作平凸透镜(反方向)以及用于装置元件3的密封构件。
    • 14. 发明申请
    • MEMORY DIAGNOSTIC METHOD, MEMORY DIAGNOSTIC DEVICE, AND NON-TRANSITORY COMPUTER-READABLE STORAGE MEDIUM
    • 记忆诊断方法,记忆诊断装置和非终端计算机可读存储介质
    • US20120324294A1
    • 2012-12-20
    • US13579982
    • 2010-03-11
    • Hiroshi YamadaYasuharu ItanoEtsuji Matsuyama
    • Hiroshi YamadaYasuharu ItanoEtsuji Matsuyama
    • G06F11/28
    • G06F11/1004G06F11/10G06F11/1008
    • In a memory diagnostic method, a fixed domain stores data that are not changed during process execution. A variable domain stores data that are subject to writing during process execution. A fixed domain diagnostic part adds an error-detecting code to data to be stored in the fixed domain. The fixed domain diagnostic part compares an error-detecting code calculated from data read from the fixed domain with the added error-detecting code to determine whether there is any data error. A variable domain diagnostic part temporarily stores data stored in the variable domain in a memory region different from the memory storing the data, and writes known data in the variable domain where the temporarily stored data were stored. The variable domain diagnostic part reads data from the region where the known data were written and determines whether the data is the same as the written known data.
    • 在内存诊断方法中,固定域存储在进程执行期间未更改的数据。 可变域存储在进程执行期间需要写入的数据。 固定域诊断部分将错误检测码添加到要存储在固定域中的数据。 固定域诊断部分将从固定域读取的数据计算的检错码与添加的检错码进行比较,以确定是否存在任何数据错误。 可变域诊断部分将存储在可变域中的数据临时存储在与存储数据的存储器不同的存储器区域中,并将已知数据写入存储了暂时存储的数据的可变域中。 可变域诊断部分从已知数据写入的区域读取数据,并确定数据是否与已知数据相同。
    • 17. 发明申请
    • SIMULATOR
    • 模拟器
    • US20120203528A1
    • 2012-08-09
    • US13367837
    • 2012-02-07
    • Takuro IKEDAEiji KitagawaHiroshi Yamada
    • Takuro IKEDAEiji KitagawaHiroshi Yamada
    • G06G7/70G06G7/48
    • G06F17/5009G06F17/5068G06F17/5095G08G1/0125
    • A simulator used in a distributed process simulation includes: a storage unit configured to store map information, agent information, and area allocation information; a simulation execution unit; a condition determination unit configured to determine the condition of the reference agent to be referenced by the simulation execution unit based on a movement state of the agent; an allocation discrimination unit configured to discriminate another computer allocated an area in which the reference agent corresponding to the condition can be located; and an agent information acquisition unit configured to acquire the information about the agent satisfying the condition of the reference agent from the other discriminated computer.
    • 在分布式处理仿真中使用的模拟器包括:存储单元,被配置为存储地图信息,代理信息和区域分配信息; 模拟执行单元; 条件确定单元,被配置为基于所述代理的移动状态来确定由所述模拟执行单元引用的参考代理的状态; 分配鉴别单元,被配置为区分分配了与条件相对应的参考代理可以位于其中的区域的另一计算机; 以及代理信息获取单元,被配置为从另一个判别计算机获取关于所述参考代理的条件的代理的信息。
    • 20. 发明授权
    • Particulate filter regenerating system
    • 颗粒过滤器再生系统
    • US08051646B2
    • 2011-11-08
    • US12502728
    • 2009-07-14
    • Koichiro HaradaHiroshi YamadaAkihide Takami
    • Koichiro HaradaHiroshi YamadaAkihide Takami
    • F01N3/00
    • F02D41/029B01D53/944B01D53/9495B01D2251/208B01D2255/1021B01D2255/20715B01D2255/2092B01D2258/012B01D2258/014F02D41/025F02D41/1446F02D41/1448F02D41/405F02D2200/0812
    • Disclosed is a particulate filter regenerating system which comprises a fuel injection device (7) adapted to inject fuel into a combustion chamber of an engine body (1), and an exhaust gas temperature-adjusting device (33) adapted, when a PM deposit amount which is an amount of particulate matter (PM) deposited in a DPF (particulate filter) 13 provided in an exhaust passage of an engine, reaches a predetermined value X, to cause the fuel injection device (7) to perform a post-injection for injecting fuel into the combustion chamber during an expansion stroke of the engine, so as to execute a filter regeneration process of raising a temperature of exhaust gas flowing into the DPF 13 to burn the deposited PM. The exhaust gas temperature-adjusting device (33) is operable to cause the fuel injection device (7) to stop performing the post-injection in a stage where a PM burning amount which is an amount of PM burned through the filter regeneration process, is less than an initial PM deposit amount which is the PM deposit amount X at a timing of initiation of the filter regeneration process, by a predetermined amount. The particulate filter regenerating system of the present invention can adequately burn and remove PM deposited in a particulate filter, by means of a post-injection of fuel, while effectively suppressing a fuel consumption due to the post-injection.
    • 公开了一种微粒过滤器再生系统,其包括适于将燃料喷射到发动机主体(1)的燃烧室中的燃料喷射装置(7),以及排气温度调节装置(33),当PM沉积量 其是沉积在设置在发动机的排气通道中的DPF(微粒过滤器)13中的颗粒物质(PM)的量达到预定值X,以使燃料喷射装置(7)执行后喷射 在发动机的膨胀冲程期间将燃料喷射到燃烧室中,以便执行提高流入DPF 13的废气的温度以便燃烧沉积的PM的过滤器再生过程。 废气温度调节装置(33)可操作以使得燃料喷射装置(7)在通过过滤器再生处理燃烧的PM的PM燃烧量是PM燃烧量的阶段中停止执行后喷射 小于在过滤器再生处理开始时刻的PM沉积量X的初始PM沉积量预定量。 本发明的颗粒过滤器再生系统可以通过后喷射燃料来充分地燃烧和去除沉积在微粒过滤器中的PM,同时有效地抑制由于后喷射引起的燃料消耗。